Carrier 060 Unit Operation, Capacity Control and Operating Sequence Ð, FREEZE-UP Protection

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If rapid cycling of the capacity steps occurs, the deadband setting is too low and should be raised to the point that rapid cycling will cease.

If a cooler design range other than those shown in Table 5 is desired, determine the setting by using the fol- lowing formula and Table 6:

Minimum Required Unit Deadband:

Minimum Deadband = (Cooler Design Dt ÷ (2 x no. of Capacity Steps)

=F (C)

The lights on the temperature controller will indicate the status of the control. If the green light labeled ABOVE SET POINT is illuminated, the controller will add steps of ca- pacity, if additional steps are available. If the yellow light labeled BELOW SET POINT is illuminated, the controller removes steps of capacity.

The temperature controller also has a red light labeled OUT OF RANGE that indicates the system load was reduced faster than the controller could remove stages. If this occurs, the unit shuts down to avoid cooler freeze-up.

Once the temperature rises back into the control band, the unit restarts automatically. This also occurs if the therm- istor fails in the open mode. In the case of a thermistor fail- ure, the unit does not restart until the thermistor is replaced.

FREEZE-UP PROTECTION

On medium temperature brine units, the brine must be properly mixed to prevent freezing at a temperature of at least 15 F (8.3 C) below the leaving-¯uid temperature set point. Failure to provide the proper brine mixture is considered abuse and may void the Carrier warranty.

All units have the following 2 modes of freeze-up protection.

1.The temperature controller protects the system from freeze-up due to rapid loss of load and from low ¯uid ¯ow by rap- idly removing all steps of capacity and shutting down the compressor if an out-of-range condition exists. This nor- mally occurs if the leaving-¯uid temperature drops 6 to 7° F (3.3 to 3.9° C) below the temperature controller set point. Set point range is 40 to 60 F (4.4 to 15.6 C) for standard units and 15 to 39 F (−9.4 to 3.9 C) for units with medium temperature brine option.

2.The low-pressure switch provides a back-up cooler freeze-up protection system. The low-pressure switch shuts down the unit when the suction temperature drops to a point where the cooler will freeze up.

LOSS-OF-COOLER-FLOW PROTECTION Ð A proof-of- cooler-¯ow device (accessory ¯ow switch) must be used with all 30HK, HL, HW chillers. The device should be a differ- ential pressure type device and should be set to shut the unit off if cooler gpm drops below 1.5 times the nominal unit tonnage. Carrier accessory ¯ow switch, part number 30HW900003 is available for this purpose. See page 19 and Fig. 17 and 18.

COMPRESSOR GROUND FAULT SENSOR Ð The ground fault sensor accessory (Part No. 30HW900004) monitors all

phases of the 3-phase power supply to the compressor. If a short to ground is sensed by the sensor, the compressor au- tomatically shuts down. This prevents contamination of the refrigeration system from acid formation. The compressor shuts down when a 2.5 ± 2 amps ground current is sensed by a toroid installed around the compressor power leads. The unit control module locks the compressor off until the circuit power is cycled to OFF, and then ON. For installation de- tails, see the instructions included with the accessory package.

NOTE: Two accessory packages are required for 30HK, HL units.

UNIT OPERATION

Capacity Control and Operating Sequence Ð

The 30HW units have a multiple-step temperature control- ler, factory set to maintain capacity control through leaving chilled ¯uid temperature. The controller has 4 capacity steps. All 30HK, HL units have 4 capacity steps as standard. The 30HW018 and 028-040 units have 3 steps as standard, with

afourth step available as a factory-installed option. The 30HW025 units have 2 steps of capacity as standard with a third step available as a factory-installed option. All units have electric solenoid operated unloaders. See Tables 10 and 11 for capacity control steps of each unit.

At initial start-up, assume that all safety devices are sat- is®ed and there is a call for cooling.

30HK,HL UNITS Ð Close the compressor circuit breaker and turn the ON-OFF switch to the ON position.

In approximately 5 minutes, the lead compressor starts and the unloaders are energized (compressor unloads when com- pressor unloader solenoid is energized). On 30HL units, the liquid line solenoid valve will remain closed for the ®rst 10 seconds of compressor operation. The low-pressure and oil pressure switches are bypassed for 2 minutes. At the end of the 2-minute bypass period, the low-pressure and oil pres- sure switches are active in the control circuit.

Approximately 30 seconds (high setting) or 3 minutes (low setting) later, depending on the sample rate setting, the lag compressor starts and the unloaders are energized (compres- sor unloads when compressor unloader solenoid is ener- gized). On 30HL units, the liquid line solenoid valve will remain closed for the ®rst 10 seconds of compressor opera- tion. The low-pressure and oil-pressure switches are by- passed for 2 minutes. At the end of the 2-minute bypass pe- riod, the low-pressure and oil-pressure switches are active in the control circuit.

Approximately 30 seconds (high setting) or 3 minutes (low setting) later, depending on the sample rate setting, the lead compressor is loaded (unloader solenoids deenergized).

Approximately 30 seconds (high setting) or 3 minutes (low setting) later, depending on the sample rate setting, the lag compressor is loaded (unloader solenoids deenergized).

When the load is satis®ed and the leaving ¯uid tempera- ture falls below the set point, the last stage activated is dropped immediately. If the leaving ¯uid temperature still remains below the set point, then the control drops an additional stage every 30 (high setting) or 180 (low setting) seconds, de- pending on the sample rate setting.

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Contents Installation, Start-Up Service Instructions ContentsSafety Considerations GeneralPlace the Unit InstallationRig and Place Unit 30HW UnitsUnit TOP ViewLeft Side View SAE30HL050,060 Condenserless TOP View Front View Right Side ViewRear View Left Side View 30HWB018-040 Fluid Cooled 30HWBLeft Side View Front View 30HWC,SLocation of Mounting Holes Weight Distribution AT Each Mounting HOLE, 60 HZ UnitsWeight Distribution AT Each Mounting HOLE, 50 HZ Units 30HWA,B 30HWC,SCompressor HWBHWC,S CoolerRefrigerant Ð kg Ð Physical Data 30HL, HWA Condenserless Units Ð English Ð Physical Data 30HL, HWA Condenserless Units Ð SICondenser Connections Factory-Installed Unit Wheels Typical Piping with Fluid-Cooled 30HWB Unit Shown Page Installed Coupling Fastening Grooved Pipe Ends Cooler DescriptionCooler Pressure Drop Ð 30HW Units Minimum Cooler and Condenser Flow Rates Minimum Loop VolumeUnit Size Cooler Condenser Minimum Cooler Loop VOLUME² Cooler Pressure Drop Ð 30HK, HL UnitsCondenser Pressure Drop Ð Page ICF Ð Electrical Data Ð 30HK, HWB, HWC, HWS Fluid-Cooled UnitsUnit Size LRA MTAÐ Electrical Data Ð 30HL and HWA Condenserless Units DLS Field Accessory WiringCWP GCSGND COMEquip TORSEC PRIHGS HPSElectric Shock Hazard PRE-START-UPInitial Check NeutDeadband Setting Check Refrigerant ChargeTypical Deadband Requirements Check Refrigerant Feed Components START-UP and OperationOperating Limitations To ADD OILCheck Unit Safeties Pressure Relief Valve SettingsCompressor and Unit Protective Devices Crankcase HeaterFactory Settings, High-Pressure Switch Fixed Factory Settings, Low-Pressure Switch FixedUnit Operation Capacity Control and Operating Sequence ÐFREEZE-UP Protection Transfer Switch Compressor Unit Control No Position Steps Capacity Control Steps Ð 30HK, HL Standard UnitsUnit Capacity Control Operating ServiceCapacity Control Steps Ð 30HW Standard Units Steps CylindersThermistor REPLACEMENT, 30HK, HL Units ThermistorÐ Sensor Temperature F vs Resistance Temperature Resistance OhmsÐ Sensor Temperature C vs Resistance Plugs and Tubes Servicing Cooler 30HK,HL onlyTightening Cooler Head Bolts Components for Part Number PluggingTroubleshooting Chilled Fluid PROOF-OF-FLOW Switches OpenHead Bolt Tightening Sequence Troubleshooting Symptoms Cause RemedyCompressor Service Training Call for Free CatalogSTART-UP Checklist for Chiller Systems Remove and use for job le Preliminary InformationPreliminary Equipment Check YES or no LOCATE, REPAIR, and Report ANY R-22 Leaks Voltage ImbalanceFluid Leaving Cooler Unit Start-UpFluid Entering Cooler Units Rated MIN. Pressure Drop =Book Catalog No Form 30H-10SI Pg CL-4 11-98

30HK040-060, 060, 30HL050, 30HW018-040 specifications

The Carrier 30HW018-040, 30HL050, 060, and 30HK040-060 series represents a range of advanced rooftop units designed to meet the diverse heating and cooling needs of commercial buildings. Renowned for their efficiency and performance, these units incorporate cutting-edge technologies to improve operational effectiveness and reduce energy consumption.

One of the standout features of the Carrier 30HW series is its high-efficiency scroll compressors, which are engineered to provide exceptional cooling capacity while minimizing energy usage. These compressors operate quietly and ensure smooth performance across varying loads. Additionally, the units utilize advanced microprocessor controls that enhance system efficiency by enabling precise temperature regulation and optimizing energy consumption based on real-time weather conditions.

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Moreover, all units in the 30HW, 30HL, and 30HK series are designed with ease of maintenance in mind. Removable panels and easy access points allow for quick servicing and reduces downtime. The compact design also ensures that installation is straightforward, making them a preferred choice for many contractors.

In summary, Carrier's 30HW018-040, 30HL050, 060, and 30HK040-060 series are integral solutions in the HVAC market, combining energy efficiency, advanced controls, and superior air quality features. These rooftop units are tailored for commercial applications, providing reliable heating and cooling solutions while prioritizing comfort and sustainability. Through continuous innovation, Carrier remains at the forefront of HVAC technology, ensuring that their products meet the evolving demands of the industry.